Lescoat G, Chantrel-Groussard K, Pasdeloup N, Nick H, Brissot P, Gaboriau F
Inserm, U522, Rennes, F-35000, Rennes cedex, France.
Cell Prolif. 2007 Oct;40(5):755-67. doi: 10.1111/j.1365-2184.2007.00468.x.
Iron loading has been observed to have a hyperproliferative effect on hepatocytes in vitro and on tumour cells in vivo; removal of this iron being required to induce antitumour activity.
Antiproliferative effects of orally active tridentate iron chelator ICL670 (deferasirox) and bidentate iron chelator CP20 (deferiprone), mediated through the chelation of intracellular iron, were compared in rat hepatoma cell line FAO and human hepatoma cell line HUH7.
In FAO cell cultures, we have shown that ICL670 decreased cell viability and DNA replication and induced apoptosis more efficiently than an iron-binding equivalent concentration of CP20. Moreover, ICL670 decreased significantly the number of the cells in G(2)-M phase. In the HUH7 cell cultures, ICL670 and a four-time higher iron-binding equivalent concentration of CP20, decreased cell viability and DNA replication in the same range. CP20 increased the number of the cells in G(2)-M phase. However, ICL670 inhibited polyamine biosynthesis by decreasing ornithine decarboxylase mRNA level; in contrast, CP20 increased polyamine biosynthesis, particularly putrescine level, by stimulating spermidine-spermine N(1)-acetyl transferase activity that could activate the polyamine retro-conversion pathway. By mass spectrometry, we observed that ICL670 cellular uptake was six times higher than CP20.
These results suggest that ICL670 has a powerful antitumoural effect and blocks cell proliferation in neoplastic cells by a pathway different from that of CP20 and may constitute a potential adjuvant drug for anticancer therapy.
已观察到铁负荷在体外对肝细胞以及在体内对肿瘤细胞具有促增殖作用;去除这种铁是诱导抗肿瘤活性所必需的。
在大鼠肝癌细胞系FAO和人肝癌细胞系HUH7中,比较了通过螯合细胞内铁介导的口服活性三齿铁螯合剂ICL670(地拉罗司)和双齿铁螯合剂CP20(去铁酮)的抗增殖作用。
在FAO细胞培养中,我们已表明,与铁结合等效浓度的CP20相比,ICL670更有效地降低细胞活力和DNA复制并诱导凋亡。此外,ICL670显著减少处于G(2)-M期的细胞数量。在HUH7细胞培养中,ICL670和铁结合等效浓度高四倍的CP20在相同范围内降低细胞活力和DNA复制。CP20增加处于G(2)-M期的细胞数量。然而,ICL670通过降低鸟氨酸脱羧酶mRNA水平抑制多胺生物合成;相反,CP20通过刺激可激活多胺逆向转化途径的亚精胺-精胺N(1)-乙酰转移酶活性增加多胺生物合成,特别是腐胺水平。通过质谱分析,我们观察到ICL670的细胞摄取量比CP20高六倍。
这些结果表明,ICL670具有强大的抗肿瘤作用,并通过与CP20不同的途径阻断肿瘤细胞中的细胞增殖,可能构成抗癌治疗的潜在辅助药物。